首页> 外文会议>International symposium on fiber-reinforced polymer reinforcement for concrete structures >INVESTIGATION OF EFFICIENT ANCHORAGE SYSTEMS FOR SHEAR AND TORSION RETROFITTING OF BOX GIRDER BRIDGES
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INVESTIGATION OF EFFICIENT ANCHORAGE SYSTEMS FOR SHEAR AND TORSION RETROFITTING OF BOX GIRDER BRIDGES

机译:箱梁桥梁剪切和扭转改装有效锚固系统的研究

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Carbon Fibre reinforced Polymers (CFRP) have become an effective solution to upgrade and strengthen existing box girder bridges in flexure, shear and torsion. The introduction of CFRP strain limitations to prevent premature delamination together with the increasing strengthening demands and the necessity for use of fibres of increasing stiffness and thickness has resulted in a very poor CFRP material utilisation levels achieved in practice. An effective method to increase CFRP material utilisation is by appropriately anchoring the ends of the CFRP. In this paper, a study into CFRP end anchorage solutions is presented which formed the basis of the experimental program. Both uni-directional and bi-directional fabric was applied to the ends of CFRP laminates and tested under direct shear loading. Uni-directional fabric was oriented both horizontally across and parallel to the direction of the laminate. In all cases it was found that the anchorages solutions tested resulted in a distribution of fibre-to-adhesive bond stresses over a greater length, width of concrete and could potentially result full CFRP utilisation and laminate rupture.
机译:碳纤维增强聚合物(CFRP)已成为升级和加强弯曲,剪切和扭转方面现有箱梁桥的有效解决方案。 CFRP应变限制的引入以防止过早分层随着增强的提高需求以及使用增加刚度和厚度的纤维的必要性,导致了在实践中实现的CFRP材料利用水平非常差。通过适当地锚固CFRP的端部来增加CFRP材料利用的有效方法。本文介绍了CFRP结束锚固解决方案的研究,该研究形成了实验程序的基础。单向和双向织物涂覆到CFRP层压板的末端并在直接剪切负载下测试。单向织物在水平横穿并平行于层压板的方向定向。在所有情况下,发现测试的锚固溶液导致纤维到粘合剂粘合应力的分布在更大的长度,混凝土的宽度上,并且可能导致完全的CFRP利用和层压破裂。

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